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接枝处理对芳纶纤维/炭黑/丁苯橡胶复合材料性能的影响

李杨 肖臻 史才雯 潘小丽 王姿懿

塑料科技2024,Vol.52Issue(3):67-71,5.
塑料科技2024,Vol.52Issue(3):67-71,5.DOI:10.15925/j.cnki.issn1005-3360.2024.03.013

接枝处理对芳纶纤维/炭黑/丁苯橡胶复合材料性能的影响

Effect of Grafting Treatment on Properties of Aramid Fiber/Carbon Black/Styrene-Butadiene Rubber Composites

李杨 1肖臻 2史才雯 1潘小丽 1王姿懿1

作者信息

  • 1. 贵州理工学院材料与能源工程学院,贵州贵阳 550003
  • 2. 通标标准技术服务(青岛)有限公司,山东青岛 266000
  • 折叠

摘要

Abstract

In this paper,the aramid fiber was modified with polyamic acid(PAA)and glycidyl polyhedral sesquioxane(POSS)by supercritical CO2 assisted solution impregnation method,and then aramid fiber/carbon black/styrene-butadiene rubber composites(AF/CB/SBR=2/50/100)were prepared by modified aramid fiber.The effects of modified aramid fibers on the processing performance of composites were tested and the effects of two surface grafting agents on the performance of AF/CB/SBR composites were investigated.The results showed that the crosslinking density of the composites increased significantly after the modification of POSS and PAA with supercritical CO2,which delayed the vulcanization process and increased the positive vulcanization time.The tensile strength and 100%constant elongation of the composites modified by supercritical CO2-assisted POSS increased by 10.77%and 19.58%,respectively,while the tensile strength and 100%constant elongation of the composites modified by supercritical CO2-assisted PAA increased by 15.13%and 25.77%,respectively.Correspondingly,after the modification of POSS and PAA assisted by supercritical CO2,the interface slip energy values were 5.76 and 6.94,increasing by 17.6%and 41.6%,respectively.In comparison,the aramid fiber modified by macromolecule PAA grafting is more favorable to the improvement of the comprehensive properties of rubber composites.

关键词

芳纶纤维/接枝处理/超临界CO2/丁苯橡胶/界面黏合

Key words

Aramid fiber/Graft treatment/Supercritical CO2/Styrene butadiene rubber/Interfacial adhension

分类

化学化工

引用本文复制引用

李杨,肖臻,史才雯,潘小丽,王姿懿..接枝处理对芳纶纤维/炭黑/丁苯橡胶复合材料性能的影响[J].塑料科技,2024,52(3):67-71,5.

基金项目

国家自然科学基金项目(52363009) (52363009)

塑料科技

OA北大核心CSTPCD

1005-3360

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